Effects of intestinal nematode treatment on CD11b activation state in an EAE mouse model of multiple sclerosis

Katarzyna Donskow-Łysoniewska1, Katarzyna Krawczak2, Maja Machcińska3

  • 1Department of Parasitology, Institute of Zoology, Faculty of Biology, University of Warsaw, Warsaw, Poland; Laboratory of Parasitology, General Karol Kaczkowski Military Institute of Hygiene and Epidemiology, Warsaw, Poland.

Immunobiology
|August 31, 2019
PubMed

Insights

Heligmosomoides polygyrus infection suppresses experimental autoimmune encephalomyelitis (EAE) by recruiting CD11b+ cells to the central nervous system. These cells exhibit an activated phenotype, suggesting a role in downregulating neuroinflammation in Multiple Sclerosis models.

Area of Science:

  • Immunology
  • Neuroscience
  • Parasitology

Background:

  • Experimental autoimmune encephalomyelitis (EAE) models Multiple Sclerosis (MS), involving CNS inflammation and demyelination.
  • Leukocyte integrins, like CD11b, are crucial for immune cell migration in autoimmune and inflammatory conditions.
  • Heligmosomoides polygyrus infection in mice impacts CD11b+ myeloid cell function and migration.

Purpose of the Study:

  • To investigate the phenotype and activity of CD11b+ cells during H. polygyrus infection in EAE mice.
  • To understand the role of these CD11b+ cells in the suppression of EAE.

Main Methods:

  • Induction of EAE in mice.
  • Intestinal infection with L4 H. polygyrus.
  • Flow cytometry analysis of CD11b+ cells in the CNS, assessing expression of CD80/CD86, CD40, MHCII, F4/80, and CD206.

Main Results:

  • H. polygyrus infection suppressed ongoing EAE.
  • Extensive infiltration of CD11b+ cells into the CNS was observed.
  • These CD11b+ cells displayed an activated phenotype with co-stimulatory molecules and CD206 expression.

Conclusions:

  • CD11b+ cells in EAE mice infected with H. polygyrus exhibit a distinct activated phenotype.
  • This cellular response may contribute to the downregulation of neuroinflammation in EAE.
  • Understanding CD11b+ cell heterogeneity is important for neuroinflammatory disorder research.

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